单相并网中压变流器二阶谐波补偿的三相解决方案

Stefan Schönewolf, A. Nagel, M. Bakran
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引用次数: 1

摘要

为了消除单相交流电网中用于补偿脉动潮流的笨重无源元件,相关文献中提出了许多采用电力电子技术的解决方案。这些解决方案的一个子类附加一个额外的相位到现有的四象限转换器(4QC),以控制补偿功率流到一个全交流额定电容器用作储能元件。本文表明,在铁路牵引等中压应用中,与全交流额定器件相比,直流偏置薄膜电容器的能量密度明显更高。因此,现有的拓扑结构被转换成采用直流偏置电容器作为储能元件的多层结构,为注入四象限变换器的电流提供了额外的自由度。通过使用优化的电流形状,与原始解决方案相比,在几乎恒定的半导体开关功率下,无源元件的额定值可以降低。仿真结果表明,所提出的补偿方案是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Third phase solutions for compensation of second order harmonics in single-phase grid connected medium voltage converters
To eliminate bulky passive components used for the compensation of pulsating power flow in applications supplied from single phase AC grids, many solutions employing power electronics have been presented in the pertinent literature. One subclass of these solutions attaches an additional phase to an existing four-quadrant converter (4QC), to control a compensating power flow to a fully AC rated capacitor used as energy storage element. In this paper, it is shown that in medium voltage applications like railway traction, DC biased film capacitors reach significantly higher energy density compared to fully AC rated devices. For this reason, the existing topology is converted to a multilevel structure employing a DC biased capacitor as energy storage element, providing additional degrees of freedom for the current to be injected into the four-quadrant converter. By using an optimized current shape, the ratings for the passive components can be decreased at nearly constant semiconductor switch power compared to the original solution. Simulations results are shown to prove that the compensation works with the proposed solutions.
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